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PMID: 22885006 Published · ppublish English

Cohesin association to replication sites depends on rad50 and promotes fork restart.

Molecular cell ·Vol. 48 ·No. 1 ·2013-01-17

Tittel-Elmer Mireille, Lengronne Armelle, Davidson Marta B, Bacal Julien, François Philippe, Hohl Marcel, Petrini John H J, Pasero Philippe, Cobb Jennifer A

Abstract

The cohesin complex holds together newly replicated chromatids and is involved in diverse pathways that preserve genome integrity. We show that in budding yeast, cohesin is transiently recruited to active replication origins, and it spreads along DNA as forks progress. When DNA synthesis is impeded, cohesin accumulates at replication sites and is critical for the recovery of stalled forks. Cohesin enrichment at replication forks does not depend on γH2A(X) formation, which differs from its loading requirements at DNA double-strand breaks (DSBs). However, cohesin localization is largely reduced in rad50Δ mutants and in cells lacking both Mec1 and Tel1 checkpoint kinases. Interestingly, cohesin loading at replication sites depends on the structural features of Rad50 that are important for bridging sister chromatids, including the CXXC hook domain and the length of the coiled-coil extensions. Together, these data reveal a function for cohesin in the maintenance of genome integrity during S phase.

Article Info
Journal
Molecular cell
Abbr.
Mol Cell
Published
2013-01-17
Indexed
2012-10-15
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
9802571
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